拉伸诱导心肌细胞肥大的机械转导。

J Sadoshima, S Izumo
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引用次数: 51

摘要

心肌的机械负荷导致一些立即早期(IE)基因的快速激活和肥大。然而,关于肌肉细胞如何感知机械负荷和调节基因表达,我们知之甚少。我们研究了几种假定的机械换能器在拉伸诱导心肌细胞肥大中的作用,这些心肌细胞生长在可变形的硅胶片上。利用膜片钳技术,我们发现了一类被钆完全可逆阻断的拉伸激活阳离子通道。钆对该通道的抑制既不影响拉伸诱导的IE基因表达,也不影响肥大。不论是秋水仙碱破坏微管,还是细胞松弛素D破坏肌动蛋白微丝,都不能阻止拉伸诱导的IE基因表达。河豚毒素抑制收缩活性对拉伸诱导的IE基因表达和肥厚没有影响。这些结果表明,拉伸激活的阳离子通道、微管、微丝和收缩活性不是机械换能器。初步结果表明,细胞拉伸可能导致一种生长因子的释放,进而引发心肌细胞的级联性肥厚反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanotransduction in stretch-induced hypertrophy of cardiac myocytes.

Mechanical loading of cardiac muscles causes rapid activation of a number of immediate-early (IE) genes and hypertrophy. However, little is known as to how muscle cells sense mechanical load and regulate gene expression. We examined roles of several putative mechanotransducers in stretch-induced hypertrophy of cardiac myocytes grown on a deformable silicone sheet. Using the patch-clamp technique, we found a single class of stretch-activated cation channels which was completely and reversibly blocked by gadolinium. The inhibition of this channel by gadolinium did not affect either stretch-induced expression of the IE genes or hypertrophy. Neither disruption of microtubules with colchicine nor that of actin microfilaments by cytochalasin D prevented the stretch-induced IE gene expression. Arresting contractile activity by tetrodotoxin did not affect the stretch-induced IE gene expression or hypertrophy. These results suggest that stretch-activated cation channels, microtubules, microfilaments, and contractile activity are not the mechanotransducers. Preliminary results suggest that cell stretch may cause a release of a growth factor(s), which in turn initiates a cascade of hypertrophic response of cardiac myocytes.

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